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首页> 外文期刊>Bioscience Reports >Role of Peripheral Benzodiazepine Receptors on Secretion of Surfactant in Guinea Pig Alveolar Type II Cells
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Role of Peripheral Benzodiazepine Receptors on Secretion of Surfactant in Guinea Pig Alveolar Type II Cells

机译:外围苯二氮卓类受体对豚鼠II型肺泡细胞表面活性剂分泌的作用

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Granular type II cells located in the alveolar epithelium synthesize and secrete pulmonary surfactant and have specialized ion transport system. Alveolar type II cells are stimulated to secrete pulmonary surfactant by a variety of agonists. One mechanism by which extracellular signals are perceived by cells is the mobilization of intracellular Ca2+. Peripheral benzodiazepine receptors (PBRs) are present in both peripheral tissues and central nervous system. We have previously reported the presence of high density PBRs in lung and alveolar type II cells. It is known that both PBRs and beta-adrenergic receptors (beta-ARs) play an important role in cellular Ca2+ transport. Furthermore, we have suggested earlier that PBRs are someway functionally associated with the beta-ARs. The objective of the present study was to determine whether PBRs play any role in the secretion of surfactant by alveolar type II cells. Alveolar type II cells were isolated from normal weanling guinea pigs by panning method and incubated with 3H-palmitic acid in minimum essential medium to synthesize labelled dipalmitoyl phosphatidylcholine (DPPC). After washing, the cells were treated at 37°C for one hour with 10 μM isoproterenol (IP) in the presence and absence of 10 μM Ro 5-4864, an agonist for PBRs. After one hour, the release of labelled DPPC in the medium was analyzed. The control cells released DPPC without any addition of a ligand. However, the treatment of cells with IP, Ro 5-4864 and IP + Ro 5-4864 caused 24, 52 and 171% increase in the secretion of DPPC, respectively. In another experiment, type II cells were loaded with Fura-2 dye and treated with either IP or epineprine or Ro 5-4864. Both isoproterenol and epinephrine caused a significant increase in the level of cytosolic free Ca2+. However, Ro 5-4864 caused not only a decrease in the level of cytosolic free Ca2+ but also counteracted the stimulatory effect of IP. This may suggest that while ligands for ARs stimulate Ca2+ release into cytosol, the ligand for PBRs stimulates efflux of Ca2+ in alveolar type cells. Thus, the increased secretion of surfactant by the ligand of PBRs in alveolar type II cells may be mediated through its effects on increased Ca2+ efflux.
机译:位于肺泡上皮中的II型颗粒细胞合成并分泌肺表面活性剂,并具有专门的离子转运系统。各种激动剂可刺激II型肺泡细胞分泌肺表面活性剂。细胞感知细胞外信号的一种机制是细胞内Ca2 +的动员。周围组织和中枢神经系统均存在周围苯并二氮杂receptor受体(PBR)。我们先前曾报道过肺和II型肺泡细胞中存在高密度PBR。众所周知,PBR和β-肾上腺素受体(β-ARs)在细胞Ca2 +转运中都起着重要作用。此外,我们之前已经提出,PBR在某种程度上与β-ARs相关。本研究的目的是确定PBR在II型肺泡细胞分泌表面活性剂中是否发挥任何作用。通过淘选法从正常断奶的豚鼠中分离出II型肺泡细胞,并在最小必需培养基中与3H-棕榈酸一起孵育,以合成标记的二棕榈酰磷脂酰胆碱(DPPC)。洗涤后,在存在和不存在10μMRo 5-4864(PBR激动剂)存在下,将细胞在37°C下用10μM异丙肾上腺素(IP)处理一小时。一小时后,分析了标记的DPPC在培养基中的释放。对照细胞释放DPPC而不添加任何配体。但是,用IP,Ro 5-4864和IP + Ro 5-4864处理细胞分别导致DPPC分泌增加24%,52%和171%。在另一个实验中,II型细胞上装有Fura-2染料,并用IP或肾上腺素或Ro 5-4864处理。异丙肾上腺素和肾上腺素均引起细胞内游离钙离子水平的显着增加。然而,Ro 5-4864不仅导致胞质游离Ca2 +含量降低,而且抵消了IP的刺激作用。这可能表明,虽然ARs的配体刺激Ca2 +释放到细胞质中,但PBRs的配体刺激肺泡型细胞中Ca2 +的流出。因此,II型肺泡细胞中PBRs的配体增加的表面活性剂分泌可能是通过其对Ca2 +外流增加的作用来介导的。

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